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Marat Dukhane6dc0b62020-09-08 23:57:14 -07001// Copyright 2020 Google LLC
2//
3// This source code is licensed under the BSD-style license found in the
4// LICENSE file in the root directory of this source tree.
5
6$assert BATCH_TILE % 8 == 0
7$assert BATCH_TILE >= 8
8$ABC = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ"
9#include <assert.h>
10
11#include <immintrin.h>
12
13#include <xnnpack/intrinsics-polyfill.h>
14#include <xnnpack/vadd.h>
15
16
17void xnn_qs8_vaddc_minmax_ukernel__avx2_mul32_ld64_x${BATCH_TILE}(
18 size_t n,
Marat Dukhan076bcfe2021-07-19 19:24:42 -070019 const int8_t* input_a,
20 const int8_t* input_b,
Marat Dukhane6dc0b62020-09-08 23:57:14 -070021 int8_t* output,
Marat Dukhan6e0fc392021-07-19 18:38:24 -070022 const union xnn_qs8_add_minmax_params params[restrict XNN_MIN_ELEMENTS(1)]) XNN_DISABLE_TSAN
Marat Dukhane6dc0b62020-09-08 23:57:14 -070023{
Marat Dukhan076bcfe2021-07-19 19:24:42 -070024 const __m256i va_multiplier = _mm256_broadcastsi128_si256(_mm_load_si128((const __m128i*) params->sse2.x_multiplier));
Marat Dukhane6dc0b62020-09-08 23:57:14 -070025 const __m256i vremainder_mask = _mm256_broadcastsi128_si256(_mm_load_si128((const __m128i*) params->sse2.remainder_mask));
26 const __m256i vremainder_threshold = _mm256_broadcastsi128_si256(_mm_load_si128((const __m128i*) params->sse2.remainder_threshold));
27 const __m128i vshift = _mm_cvtsi32_si128((int) params->sse2.shift);
28 $if BATCH_TILE > 8:
29 const __m256i voutput_zero_point = _mm256_broadcastsi128_si256(_mm_load_si128((const __m128i*) params->sse2.output_zero_point));
30 const __m256i voutput_min = _mm256_broadcastsi128_si256(_mm_load_si128((const __m128i*) params->sse2.output_min));
31 const __m256i voutput_max = _mm256_broadcastsi128_si256(_mm_load_si128((const __m128i*) params->sse2.output_max));
32 $else:
33 const __m128i voutput_zero_point = _mm_load_si128((const __m128i*) params->sse2.output_zero_point);
34 const __m128i voutput_min = _mm_load_si128((const __m128i*) params->sse2.output_min);
35 const __m128i voutput_max = _mm_load_si128((const __m128i*) params->sse2.output_max);
36
37 __m256i vzero_point_product = _mm256_broadcastsi128_si256(_mm_add_epi32(
Marat Dukhan076bcfe2021-07-19 19:24:42 -070038 _mm_broadcastd_epi32(_mm_cvtsi32_si128(params->sse2.y_multiplier[0] * (int32_t) *input_b)),
Marat Dukhane6dc0b62020-09-08 23:57:14 -070039 _mm_load_si128((const __m128i*) params->sse2.zero_point_product)));
40 for (; n >= ${BATCH_TILE} * sizeof(int8_t); n -= ${BATCH_TILE} * sizeof(int8_t)) {
Marat Dukhan076bcfe2021-07-19 19:24:42 -070041 const __m256i va${ABC[0:8]} = _mm256_cvtepi8_epi32(_mm_loadl_epi64((const __m128i*) input_a));
Marat Dukhane6dc0b62020-09-08 23:57:14 -070042 $for N in range(8, BATCH_TILE, 8):
Marat Dukhan076bcfe2021-07-19 19:24:42 -070043 const __m256i va${ABC[N:N+8]} = _mm256_cvtepi8_epi32(_mm_loadl_epi64((const __m128i*) (input_a + ${N})));
44 input_a += ${BATCH_TILE};
Marat Dukhane6dc0b62020-09-08 23:57:14 -070045
46 $for N in range(0, BATCH_TILE, 8):
Marat Dukhan076bcfe2021-07-19 19:24:42 -070047 __m256i vacc${ABC[N:N+8]} = _mm256_add_epi32(vzero_point_product, _mm256_mullo_epi32(va${ABC[N:N+8]}, va_multiplier));
Marat Dukhane6dc0b62020-09-08 23:57:14 -070048
49 $for N in range(0, BATCH_TILE, 8):
50 const __m256i vrem${ABC[N:N+8]} = _mm256_add_epi32(_mm256_and_si256(vacc${ABC[N:N+8]}, vremainder_mask), _mm256_srai_epi32(vacc${ABC[N:N+8]}, 31));
51
52 $for N in range(0, BATCH_TILE, 8):
53 vacc${ABC[N:N+8]} = _mm256_sub_epi32(_mm256_sra_epi32(vacc${ABC[N:N+8]}, vshift), _mm256_cmpgt_epi32(vrem${ABC[N:N+8]}, vremainder_threshold));
54
55 $for N in range(0, BATCH_TILE, 16):
56 $if N + 8 < BATCH_TILE:
57 __m256i vout${ABC[N:N+4]}${ABC[N+8:N+12]}${ABC[N+4:N+8]}${ABC[N+12:N+16]} = _mm256_adds_epi16(_mm256_packs_epi32(vacc${ABC[N:N+8]}, vacc${ABC[N+8:N+16]}), voutput_zero_point);
58 $elif BATCH_TILE > 8:
59 __m128i vout${ABC[N:N+8]} = _mm_adds_epi16(_mm_packs_epi32(_mm256_castsi256_si128(vacc${ABC[N:N+8]}), _mm256_extracti128_si256(vacc${ABC[N:N+8]}, 1)), _mm256_castsi256_si128(voutput_zero_point));
60 $else:
61 __m128i vout${ABC[N:N+8]} = _mm_adds_epi16(_mm_packs_epi32(_mm256_castsi256_si128(vacc${ABC[N:N+8]}), _mm256_extracti128_si256(vacc${ABC[N:N+8]}, 1)), voutput_zero_point);
62
63 $for N in range(0, BATCH_TILE, 16):
64 $if N + 8 < BATCH_TILE:
65 vout${ABC[N:N+4]}${ABC[N+8:N+12]}${ABC[N+4:N+8]}${ABC[N+12:N+16]} = _mm256_min_epi16(_mm256_max_epi16(vout${ABC[N:N+4]}${ABC[N+8:N+12]}${ABC[N+4:N+8]}${ABC[N+12:N+16]}, voutput_min), voutput_max);
66 $elif BATCH_TILE > 8:
67 vout${ABC[N:N+8]} = _mm_min_epi16(_mm_max_epi16(vout${ABC[N:N+8]}, _mm256_castsi256_si128(voutput_min)), _mm256_castsi256_si128(voutput_max));
68 $else:
69 vout${ABC[N:N+8]} = _mm_min_epi16(_mm_max_epi16(vout${ABC[N:N+8]}, voutput_min), voutput_max);
70
71 $for N in range(0, BATCH_TILE, 16):
72 $if N + 8 < BATCH_TILE:
73 __m128i vout${ABC[N:N+16]} = _mm_shuffle_epi32(_mm_packs_epi16(_mm256_castsi256_si128(vout${ABC[N:N+4]}${ABC[N+8:N+12]}${ABC[N+4:N+8]}${ABC[N+12:N+16]}), _mm256_extracti128_si256(vout${ABC[N:N+4]}${ABC[N+8:N+12]}${ABC[N+4:N+8]}${ABC[N+12:N+16]}, 1)), _MM_SHUFFLE(3, 1, 2, 0));
74 $else:
75 __m128i vout${ABC[N:N+8]}${ABC[N:N+8]} = _mm_packs_epi16(vout${ABC[N:N+8]}, vout${ABC[N:N+8]});
76
77 $if BATCH_TILE >= 16:
78 _mm_storeu_si128((__m128i*) output, vout${ABC[0:16]});
79 $else:
80 _mm_storel_epi64((__m128i*) output, vout${ABC[0:8]}${ABC[0:8]});
81 $for N in range(16, BATCH_TILE, 16):
82 $if N + 8 < BATCH_TILE:
83 _mm_storeu_si128((__m128i*) (output + ${N}), vout${ABC[N:N+16]});
84 $else:
85 _mm_storel_epi64((__m128i*) (output + ${N}), vout${ABC[N:N+8]}${ABC[N:N+8]});
86 output += ${BATCH_TILE};
87 }
88 if XNN_UNLIKELY(n != 0) {
89 ${"do " if BATCH_TILE > 8 else ""}{
Marat Dukhan076bcfe2021-07-19 19:24:42 -070090 const __m256i va${ABC[0:8]} = _mm256_cvtepi8_epi32(_mm_loadl_epi64((const __m128i*) input_a));
Marat Dukhane6dc0b62020-09-08 23:57:14 -070091 $if BATCH_TILE > 8:
Marat Dukhan076bcfe2021-07-19 19:24:42 -070092 input_a += 8;
Marat Dukhane6dc0b62020-09-08 23:57:14 -070093
Marat Dukhan076bcfe2021-07-19 19:24:42 -070094 __m256i vacc${ABC[0:8]} = _mm256_add_epi32(vzero_point_product, _mm256_mullo_epi32(va${ABC[0:8]}, va_multiplier));
Marat Dukhane6dc0b62020-09-08 23:57:14 -070095
96 const __m256i vrem${ABC[0:8]} = _mm256_add_epi32(_mm256_and_si256(vacc${ABC[0:8]}, vremainder_mask), _mm256_srai_epi32(vacc${ABC[0:8]}, 31));
97
98 vacc${ABC[0:8]} = _mm256_sub_epi32(_mm256_sra_epi32(vacc${ABC[0:8]}, vshift), _mm256_cmpgt_epi32(vrem${ABC[0:8]}, vremainder_threshold));
99
100 $if BATCH_TILE > 8:
101 __m128i vout${ABC[0:8]} = _mm_adds_epi16(_mm_packs_epi32(_mm256_castsi256_si128(vacc${ABC[0:8]}), _mm256_extracti128_si256(vacc${ABC[0:8]}, 1)), _mm256_castsi256_si128(voutput_zero_point));
102 vout${ABC[0:8]} = _mm_min_epi16(_mm_max_epi16(vout${ABC[0:8]}, _mm256_castsi256_si128(voutput_min)), _mm256_castsi256_si128(voutput_max));
103 $else:
104 __m128i vout${ABC[0:8]} = _mm_adds_epi16(_mm_packs_epi32(_mm256_castsi256_si128(vacc${ABC[0:8]}), _mm256_extracti128_si256(vacc${ABC[0:8]}, 1)), voutput_zero_point);
105 vout${ABC[0:8]} = _mm_min_epi16(_mm_max_epi16(vout${ABC[0:8]}, voutput_min), voutput_max);
106 __m128i vout${ABC[0:8]}${ABC[0:8]} = _mm_packs_epi16(vout${ABC[0:8]}, vout${ABC[0:8]});
107
108 $if BATCH_TILE > 8:
109 if XNN_LIKELY(n >= (8 * sizeof(int8_t))) {
110 _mm_storel_epi64((__m128i*) output, vout${ABC[0:8]}${ABC[0:8]});
111 output += 8;
112 n -= 8 * sizeof(int8_t);
113 } else {
114 if (n & (4 * sizeof(int8_t))) {
115 *((uint32_t*) output) = (uint32_t) _mm_cvtsi128_si32(vout${ABC[0:8]}${ABC[0:8]});
116 vout${ABC[0:8]}${ABC[0:8]} = _mm_srli_epi64(vout${ABC[0:8]}${ABC[0:8]}, 32);
117 output += 4;
118 }
119 if (n & (2 * sizeof(int8_t))) {
120 *((uint16_t*) output) = (uint16_t) _mm_extract_epi16(vout${ABC[0:8]}${ABC[0:8]}, 0);
121 vout${ABC[0:8]}${ABC[0:8]} = _mm_srli_epi32(vout${ABC[0:8]}${ABC[0:8]}, 16);
122 output += 2;
123 }
124 if (n & (1 * sizeof(int8_t))) {
125 *output = (int8_t) _mm_extract_epi8(vout${ABC[0:8]}${ABC[0:8]}, 0);
126 }
127 n = 0;
128 }
129 $else:
130 if (n & (4 * sizeof(int8_t))) {
131 *((uint32_t*) output) = (uint32_t) _mm_cvtsi128_si32(vout${ABC[0:8]}${ABC[0:8]});
132 vout${ABC[0:8]}${ABC[0:8]} = _mm_srli_epi64(vout${ABC[0:8]}${ABC[0:8]}, 32);
133 output += 4;
134 }
135 if (n & (2 * sizeof(int8_t))) {
136 *((uint16_t*) output) = (uint16_t) _mm_extract_epi16(vout${ABC[0:8]}${ABC[0:8]}, 0);
137 vout${ABC[0:8]}${ABC[0:8]} = _mm_srli_epi32(vout${ABC[0:8]}${ABC[0:8]}, 16);
138 output += 2;
139 }
140 if (n & (1 * sizeof(int8_t))) {
141 *output = (int8_t) _mm_extract_epi8(vout${ABC[0:8]}${ABC[0:8]}, 0);
142 }
143 }${" while (n != 0);" if BATCH_TILE > 8 else ""}
144 }
145}